Nova Patents
US4320184A

Production of a cell electrode system

Abstract

An improvement in the production of a cell electrode system comprises a process in which a fibrillatable polymer, an electrode active material and a removable, polymeric pore-former are subjected to conditions to convert the polymer by a dry process technique to fibrous form and to form a composition comprising discrete fibers through an intimate mixture consisting essentially of electrode active particles, and pore-former, said pore-former also serving as a processing agent and being present in a major amount, and then removing the pore-former from such composition.

Term

Term ended

Expired 19 January 1998, 28.7 years ago.

  1. Priority and filed
  2. Granted
  3. Expired
  4. Today

22 claims: 2 independent, 20 dependent

  1. 1
    A method for producing a porous, conductive cell electrode system comprised of electrode active particles and a fibrillated polymeric material comprising subjecting a fibrillatable polymer, a particulate electrode active material and a major amount of removable, polymeric pore-former to conditions for fibrillating the polymer by a dry processing technique and for forming a precursor electrode composition comprising discrete polymeric fibers throughout an intimate mixture of electrode active particles, conductive carbon and a major amount of removable, polymeric pore-former.
  2. 18
    A method for producing a porous, conductive electrode system comprised of electrode active particles and a fibrillated polymeric material, said electrode active material constituting over about 80% of the electrode system, comprising subjecting polytetrafluoroethylene powder, a conductive carbon powder, a finely divided electrode active material and a major amount of removable, polymeric pore-former, said pore former also functioning as a processing agent for the polymer, to conditions to convert the polymer in a dry state under shear stresses to a fibrous material and to form a precursor electrode composition comprising discrete polymeric fibers through an intimate mixture of active particles, conductive carbon and a major amount of pore-former, and removing the pore-former from such precursor electrode material.